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Electronic Structure and Dynamics of Higher-Lying Excited States in Light Harvesting Complex 1 from Rhodobacter sphaeroides

机译:球形红细菌光捕获复合物1中高激发态的电子结构和动力学

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摘要

Light harvesting in photosynthetic organisms involves efficient transfer of energy from peripheral antenna complexes to core antenna complexes, and ultimately to the reaction center where charge separation drives downstream photosynthetic processes. Antenna complexes contain many strongly coupled chromophores, which complicates analysis of their electronic structure. Two-dimensional electronic spectroscopy (2DES) provides information on energetic coupling and ultrafast energy transfer dynamics, making the technique well suited for the study of photosynthetic antennae. Here, we present 2DES results on excited state properties and dynamics of a core antenna complex, light harvesting complex 1 (LH1), embedded in the photosynthetic membrane of Rhodobacter sphaeroides. The experiment reveals weakly allowed higher-lying excited states in LH1 at 770 nm, which transfer energy to the strongly allowed states at 875 nm with a lifetime of 40 fs. The presence of higher-lying excited states is in agreement with effective Hamiltonians constructed using parameters from crystal structures and atomic force microscopy (AFM) studies. The energy transfer dynamics between the higher- and lower-lying excited states agree with Redfield theory calculations.
机译:光合生物中的光收集涉及能量从外围天线复合体到核心天线复合体的有效转移,并最终转移到反应中心,在此电荷分离驱动下游的光合作用过程。天线复合物包含许多强耦合的生色团,这使它们的电子结构分析变得复杂。二维电子光谱(2DES)提供了有关能量耦合和超快能量传输动力学的信息,从而使该技术非常适合光合天线的研究。在这里,我们介绍了嵌入球形球形红细菌光合膜中的核心天线复合物,光收集复合物1(LH1)的激发态性质和动力学的2DES结果。该实验揭示了LH1在770 nm处的弱允许较高激发态,该态将能量转移到875 nm处的强允许状态,寿命为40 fs。较高激发态的存在与使用晶体结构和原子力显微镜(AFM)研究的参数构建的有效哈密顿量一致。高低激发态之间的能量转移动力学与Redfield理论计算一致。

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